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Challenges of production of high current four-fold Bi and Au beams from vacuum arc ion sources at GSI accelerator facility

机译:在GSI加速器设施中使用真空电弧离子源生产大电流四倍Bi和Au束的挑战

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This work describes recent results of developing high current ion beams of Bi and Au at GSI accelerator facility. Challenges of production of ion beams with required charge state in vacuum arc discharge ion sources are discussed. The difficulties and limitations occurred due to using of pure Bi and Au materials in the cathodes are described. As a feasible solution the use of the mixed cathodes that contain a certain amount of more refractory metal admixed to the desired element is considered. As a significant result, a dramatic improvement in production of high charge state Bi and Au ions using the mixed Bi-Cu (15% Wt.) and Au-Cr (50% Wt.) cathodes, respectively, compare to cathodes from pure elements is presented. Also the results of investigation of the working surface and the material structure of the mixed cathodes using optical and electron microscopes are described. In conclusion, the possibility of optimization of cathode material as well as the next steps in development program are discussed.
机译:这项工作描述了在GSI加速器设备上开发Bi和Au高电流离子束的最新结果。讨论了在真空电弧放电离子源中产生具有所需电荷状态的离子束的挑战。描述了由于在阴极中使用纯Bi和Au材料而产生的困难和局限性。作为一种可行的解决方案,考虑使用包含与所需元素混合的一定数量的更多难熔金属的混合阴极。结果是,与纯元素阴极相比,分别使用混合的Bi-Cu(15%Wt。)和Au-Cr(50%Wt。)阴极,高电荷态Bi和Au离子的生产有了显着改善。被表达。还描述了使用光学和电子显微镜研究混合阴极的工作表面和材料结构的结果。总之,讨论了优化阴极材料的可能性以及开发程序中的后续步骤。

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